PHYSICAL-PROPERTIES OF THE ESCHERICHIA-COLI TRANSCRIPTION TERMINATION FACTOR RHO .1. ASSOCIATION STATES AND GEOMETRY OF THE RHO HEXAMER

被引:81
作者
GEISELMANN, J
YAGER, TD
GILL, SC
CALMETTES, P
VONHIPPEL, PH
机构
[1] UNIV OREGON,INST MOLEC BIOL,EUGENE,OR 97403
[2] UNIV OREGON,DEPT CHEM,EUGENE,OR 97403
关键词
D O I
10.1021/bi00116a017
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To function as a DNA-RNA helicase in rho-dependent transcript termination, six genetically identical subunits of the Escherichia coli transcription termination protein rho must first assemble into a hexameric complex. To help determine the quaternary structure of this complex, we have studied the association equilibria of the rho protomers. Sedimentation equilibrium, sedimentation velocity, diffusion, X-ray scattering, and neutron-scattering data have been combined to create a "phase diagram" of the association states of this protein as a function of protein concentration and ionic environment. The results show that rho exists predominantly as a hexamer under approximately physiological conditions and that this hexamer is in equilibrium with both lower and higher states of association that may also have physiological relevance. Small-angle X-ray scattering measurements and theoretical calculations indicate that the rho hexamer has a radius of gyration of 50 +/- 3 angstrom. The radius of gyration measured by small-angle neutron scattering in (H2O)-H-2 is 47 +/- 3 angstrom. These scattering studies also support earlier models of rho as a planar hexagon which have been developed on the basis of electron microscopy. In the following paper in this issue [Geiselmann, J., Seifried, S. E., Yager, T. D., Liang, C., & von Hippel, P. H. (1992)], these results are combined with information on symmetry, subunit interactions, and packing geometry to obtain a model of the quaternary structure of the functional rho hexamer.
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页码:111 / 121
页数:11
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